Filamentous large sulfur-oxidizing bacteria (FLSB) of the family Beggiatoaceae are globally distributed aquatic bacteria that can control geochemical fluxes from the sediment to the water column through their metabolic activity. FLSB mats from hydrothermal sediments of Guaymas Basin, Mexico, typically have a “fried-egg” appearance, with orange filaments dominating near the center and wider white filaments at the periphery, likely reflecting areas of higher and lower sulfide fluxes, respectively. These FLSB store large quantities of intracellular nitrate that they use to oxidize sulfide. By applying a combination of 15N-labeling techniques and genome sequence analysis, we demonstrate that the white FLSB filaments were capable of reducing the...
Deep-sea hydrothermal vent systems are highly productive ecosystems, where reduced energy sources fu...
Deep-sea hydrothermal vent systems are highly productive ecosystems, where reduced energy sources fu...
Understanding the mechanistic controls of microbial denitrification is of central importance to both...
Filamentous large sulfur-oxidizing bacteria (FLSB) of the family Beggiatoaceae are globally distribu...
Filamentous large sulfur-oxidizing bacteria (FLSB) of the family Beggiatoaceae are globally distribu...
Filamentous large sulfur-oxidizing bacteria (FLSB) of the family Beggiatoaceae are globally distribu...
Orange filamentous Beggiatoaceae form massive microbial mats on hydrothermal sediments in Guaymas Ba...
We measured potential nitrate removal and denitrification rates in hydrothermally altered sediments ...
Orange filamentous Beggiatoaceae form massive microbial mats on hydrothermal sediments in Guaymas Ba...
Marine sediments are frequently covered by mats of the filamentous Beggiatoa and other large nitrate...
Hydrothermal sediments in the Guaymas Basin are covered by microbial mats that are dominated by nitr...
Nitrite-oxidizing bacteria (NOB) have conventionally been regarded as a highly specialized functiona...
The aim of this study was to investigate the supposed vertical diel migration and the accompanying p...
Salt marshes provide many key ecosystem services that have tremendous ecological and economic value....
The ecological niche of nitrate-storing Beggiatoa, and their contribution to the removal of sulfide ...
Deep-sea hydrothermal vent systems are highly productive ecosystems, where reduced energy sources fu...
Deep-sea hydrothermal vent systems are highly productive ecosystems, where reduced energy sources fu...
Understanding the mechanistic controls of microbial denitrification is of central importance to both...
Filamentous large sulfur-oxidizing bacteria (FLSB) of the family Beggiatoaceae are globally distribu...
Filamentous large sulfur-oxidizing bacteria (FLSB) of the family Beggiatoaceae are globally distribu...
Filamentous large sulfur-oxidizing bacteria (FLSB) of the family Beggiatoaceae are globally distribu...
Orange filamentous Beggiatoaceae form massive microbial mats on hydrothermal sediments in Guaymas Ba...
We measured potential nitrate removal and denitrification rates in hydrothermally altered sediments ...
Orange filamentous Beggiatoaceae form massive microbial mats on hydrothermal sediments in Guaymas Ba...
Marine sediments are frequently covered by mats of the filamentous Beggiatoa and other large nitrate...
Hydrothermal sediments in the Guaymas Basin are covered by microbial mats that are dominated by nitr...
Nitrite-oxidizing bacteria (NOB) have conventionally been regarded as a highly specialized functiona...
The aim of this study was to investigate the supposed vertical diel migration and the accompanying p...
Salt marshes provide many key ecosystem services that have tremendous ecological and economic value....
The ecological niche of nitrate-storing Beggiatoa, and their contribution to the removal of sulfide ...
Deep-sea hydrothermal vent systems are highly productive ecosystems, where reduced energy sources fu...
Deep-sea hydrothermal vent systems are highly productive ecosystems, where reduced energy sources fu...
Understanding the mechanistic controls of microbial denitrification is of central importance to both...